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within a research group with strong expertise in vascular access, large animal models and clinical translation. At the same time, you will be scientifically embedded in research groups at TU Delft focusing
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of magnetically stable and optically addressable spins on surfaces, bringing molecular quantum technologies to fruition. Depending on fit, successful candidates may contribute to one or more of the
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. Set up a quantitative, experimentally validated model of the ultrasonic flow sensors Design an experimental sensing platform required for this project. Characterize ultrasound propagation loss, quality
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? Important subquestions are: How can the thermal behavior (including the runaway) of batteries be understood and modelled? This includes factors like the load cycles of the batteries, but also possible
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and viscosity of flows. Develop and invent novel measurement strategies and methods. Set up a quantitative, experimentally validated model of the ultrasonic flow sensors Design an experimental sensing
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Where will you work? You will be appointed at TU Delft and work within a research group with strong expertise in vascular access, large animal models and clinical translation. At the same time, you will
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trajectories of value realisation. It should be noted that digital software here refers to field management software and enterprise resource planning (ERP) software, not product modelling software such as
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for inclusive eHMIs. Design accessible VR simulators for people with disabilities. Conduct VR experiments to collect data and model decision-making processes in AV–VRU interactions. Conduct real-world testing
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the operando X-ray spectroscopies for resolving electrode-electrolyte interface structures. This project is a good match for you if you like: Understanding electrochemistry at the molecular level Working with
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, including high-throughput bioreactor cultivations, multi-meta-omics (metagenomics and metaproteomics), and mathematical modelling. You will work in a highly interdisciplinary environment at the interface